Martins David M S, Middlemiss Derek S, Pulham Colin R, Wilson Chick C, Weller Mark T, Henry Paul F, Shankland Norman, Shankland Kenneth, Marshall William G, Ibberson Richard M, Knight Kevin, Moggach Stephen, Brunelli Michela, Morrison Carole A
School of Chemistry and EaSTCHEM Research School, The University of Edinburgh, UK.
J Am Chem Soc. 2009 Mar 25;131(11):3884-93. doi: 10.1021/ja8082973.
We have applied a combination of spectroscopic and diffraction methods to study the adduct formed between squaric acid and bypridine, which has been postulated to exhibit proton transfer associated with a single-crystal to single-crystal phase transition at ca. 450 K. A combination of X-ray single-crystal and very-high flux powder neutron diffraction data confirmed that a proton does transfer from the acid to the base in the high-temperature form. Powder X-ray diffraction measurements demonstrated that the transition was reversible but that a significant kinetic energy barrier must be overcome to revert to the original structure. Computational modeling is consistent with these results. Modeling also revealed that, while the proton transfer event would be strongly discouraged in the gas phase, it occurs in the solid state due to the increase in charge state of the molecular ions and their arrangement inside the lattice. The color change is attributed to a narrowing of the squaric acid to bipyridine charge-transfer energy gap. Finally, evidence for the possible existence of two further phases at high pressure is also presented.
我们运用了光谱学和衍射方法相结合的手段来研究方酸与联吡啶形成的加合物,据推测该加合物在约450 K时会发生与单晶到单晶相变相关的质子转移。X射线单晶衍射和高通量粉末中子衍射数据相结合证实,在高温形式下质子确实从酸转移到了碱。粉末X射线衍射测量表明,这种转变是可逆的,但要恢复到原始结构必须克服一个显著的动能势垒。计算建模与这些结果一致。建模还表明,虽然质子转移事件在气相中极难发生,但在固态中由于分子离子电荷态的增加及其在晶格中的排列方式而发生。颜色变化归因于方酸到联吡啶电荷转移能隙的变窄。最后,还给出了在高压下可能存在另外两个相的证据。